Zobrazeno 1 - 10
of 19
pro vyhledávání: '"Kasyanov VA"'
Publikováno v:
E3S Web of Conferences, Vol 157, p 02019 (2020)
The selective calculation method has been successfully applied for several centuries due to its profitability. However, when calculating the failure-freeness in the case of fatigue fractures (often sudden), when there is a significant power relations
Externí odkaz:
https://doaj.org/article/385287afb7744a288e39de48481676d1
Autor:
Kobzev Kirill O., Shamshura Sergey A., Chukarin Alexander N., Buryanov Alexey I., Kasyanov Valeriy E.
Publikováno v:
MATEC Web of Conferences, Vol 226, p 01023 (2018)
Reduction of vibration in the cabin can be achieved by increasing the area of vibration absorption by placing on the ceiling and floor vibro-absorbing facings. The process of absorption of vibration occurs due to the transition of the energy of oscil
Externí odkaz:
https://doaj.org/article/5c9db4bdb2e94740948a0be8b4a17765
Publikováno v:
MATEC Web of Conferences, Vol 224, p 02107 (2018)
The paper proposes to consider the reliability of machines in terms of mass and individual production. The proposed approach makes it possible to assess the impact of various failures of machine parts on the reliability of single-purpose vehicles. Fa
Externí odkaz:
https://doaj.org/article/da0d703fa2f34c70af2b7fb90ca9ba6d
Autor:
Kobzev Kirill O., Shamshura Sergey A., Chukarin Alexander N., Bogdanovich Vitaliy P., Kasyanov Valeriy E.
Publikováno v:
MATEC Web of Conferences, Vol 226, p 01022 (2018)
Reduction of vibration in the cabin can be achieved by increasing the area of vibration absorption by placing on the ceiling and floor vibro-absorbing facings. The process of absorption of vibration occurs due to the transition of the energy of oscil
Externí odkaz:
https://doaj.org/article/fd04c149805944898fa52713254bae0c
Publikováno v:
MATEC Web of Conferences, Vol 224, p 02106 (2018)
The paper considers the development of methods for managing the reliability of single-production machines (lunar rover, rover, rolling mill, president’s car of the country, etc.). Many years of experience in the field of machine reliability allowed
Externí odkaz:
https://doaj.org/article/e01f25a2bc834d1098a68f381549f2ad
Akademický článek
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Akademický článek
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Akademický článek
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Autor:
Levin AA; Center for Biomedical Engineering, National University of Science and Technology 'MISIS', Moscow, Russia., Karalkin PA; National Medical Research Radiological Center, P. A. Hertsen Moscow Oncology Research Center, Moscow, Russia.; L. L. Levshin Institute of Cluster Oncology, Sechenov First Moscow State Medical University, Moscow, Russia., Koudan EV; Center for Biomedical Engineering, National University of Science and Technology 'MISIS', Moscow, Russia., Senatov FS; Center for Biomedical Engineering, National University of Science and Technology 'MISIS', Moscow, Russia., Parfenov VA; A. A. Baikov Institute of Metallurgy and Material Science, Russian Academy of Sciences, Moscow, Russia., Lvov VA; Center for Biomedical Engineering, National University of Science and Technology 'MISIS', Moscow, Russia., Petrov SV; Center for Biomedical Engineering, National University of Science and Technology 'MISIS', Moscow, Russia., Pereira FDAS; Laboratory for Biotechnological Research '3D Bioprinting Solutions', Moscow, Russia., Kovalev AV; Priorov Central National Institute of Traumatology and Orthopedics, Moscow, Russia., Osidak EO; Imtek Ltd., Moscow, Russia.; Dmitry Rogachev National Medical Research Center of Paediatric Haematology, Oncology and Immunology, Moscow, Russia., Domogatsky SP; Imtek Ltd., Moscow, Russia., Manturova NE; JSC Plastic Surgery and Cosmetology Institute, Moscow, Russia., Kasyanov VA; Joint Laboratory of Traumatology and Orthopedics, Riga Stradins University, Riga, Latvia., Sergeeva NS; National Medical Research Radiological Center, P. A. Hertsen Moscow Oncology Research Center, Moscow, Russia., Zorin VL; Human Stem Cells Institute, Moscow, Russia.; SKINCELL LLC, Skolkovo, Moscow, Russia., Khesuani YD; Laboratory for Biotechnological Research '3D Bioprinting Solutions', Moscow, Russia., Mironov VA; Center for Biomedical Engineering, National University of Science and Technology 'MISIS', Moscow, Russia.; Priorov Central National Institute of Traumatology and Orthopedics, Moscow, Russia.
Publikováno v:
International journal of bioprinting [Int J Bioprint] 2023 Jan 31; Vol. 9 (2), pp. 675. Date of Electronic Publication: 2023 Jan 31 (Print Publication: 2023).
Autor:
Koudan EV; Center for Biomedical Engineering, National University of Science and Technology 'MISIS', Moscow, Russia. koudan1980@gmail.com., Zorina AI; Human Stem Cells Institute, Moscow, Russia.; Skolkovo, SKINCELL LLC, Moscow, Russia., Levin AA; Center for Biomedical Engineering, National University of Science and Technology 'MISIS', Moscow, Russia., Pereira FDAS; Laboratory for Biotechnological Research '3D Bioprinting Solutions', Moscow, Russia., Petrov SV; Center for Biomedical Engineering, National University of Science and Technology 'MISIS', Moscow, Russia., Karshieva SS; Center for Biomedical Engineering, National University of Science and Technology 'MISIS', Moscow, Russia.; Blokhin National Medical Research Center of Oncology of the Ministry of Health of Russian Federation, Moscow, Russia., Kasyanov VA; Riga Stradins University, Riga, Latvia., Manturova NE; Pirogov Russian National Research Medical University (RNRMU), Moscow, Russia.; JSC Plastic Surgery and Cosmetology Institute, Moscow, Russia., Ustyugov AY; Pirogov Russian National Research Medical University (RNRMU), Moscow, Russia.; JSC Plastic Surgery and Cosmetology Institute, Moscow, Russia., Potekaev NN; Pirogov Russian National Research Medical University (RNRMU), Moscow, Russia., Parfenov VA; Laboratory for Biotechnological Research '3D Bioprinting Solutions', Moscow, Russia., Karalkin PA; I. M. Sechenov First Moscow State Medical University of the Ministry of Health of the Russian Federation (Sechenov University), Moscow, Russia.; National Medical Research Radiological Center, P. A. Hertsen Moscow Oncology Research Center, Moscow, Russia., Khesuani YD; Laboratory for Biotechnological Research '3D Bioprinting Solutions', Moscow, Russia., Bulanova EA; Chemical Diversity Research Institute, Khimki, Moscow Region, Russia., Kopnin PB; Blokhin National Medical Research Center of Oncology of the Ministry of Health of Russian Federation, Moscow, Russia., Isaev AA; Human Stem Cells Institute, Moscow, Russia., Mironov VA; Center for Biomedical Engineering, National University of Science and Technology 'MISIS', Moscow, Russia. vladimir.vichugov54@gmail.com.; I. M. Sechenov First Moscow State Medical University of the Ministry of Health of the Russian Federation (Sechenov University), Moscow, Russia. vladimir.vichugov54@gmail.com.; N. N. Priorov National Medical Research Center of Traumatology and Orthopedics, Moscow, Russia. vladimir.vichugov54@gmail.com., Zorin VL; Human Stem Cells Institute, Moscow, Russia. zorin@hsci.ru.; Skolkovo, SKINCELL LLC, Moscow, Russia. zorin@hsci.ru.
Publikováno v:
Cell and tissue research [Cell Tissue Res] 2022 Dec; Vol. 390 (3), pp. 453-464. Date of Electronic Publication: 2022 Sep 21.